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  3. The PARP Inhibitor AZD2461 Provides Insights into the Role of PARP3 Inhibition for Both Synthetic Lethality and Tolerability with Chemotherapy in Preclinical Models.
 

The PARP Inhibitor AZD2461 Provides Insights into the Role of PARP3 Inhibition for Both Synthetic Lethality and Tolerability with Chemotherapy in Preclinical Models.

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BORIS DOI
10.7892/boris.96719
Publisher DOI
10.1158/0008-5472.CAN-15-3240
PubMed ID
27550455
Description
The PARP inhibitor AZD2461 was developed as a next-generation agent following olaparib, the first PARP inhibitor approved for cancer therapy. In BRCA1-deficient mouse models, olaparib resistance predominantly involves overexpression of P-glycoprotein, so AZD2461 was developed as a poor substrate for drug transporters. Here we demonstrate the efficacy of this compound against olaparib-resistant tumors that overexpress P-glycoprotein. In addition, AZD2461 was better tolerated in combination with chemotherapy than olaparib in mice, which suggests that AZD2461 could have significant advantages over olaparib in the clinic. However, this superior toxicity profile did not extend to rats. Investigations of this difference revealed a differential PARP3 inhibitory activity for each compound and a higher level of PARP3 expression in bone marrow cells from mice as compared with rats and humans. Our findings have implications for the use of mouse models to assess bone marrow toxicity for DNA-damaging agents and inhibitors of the DNA damage response. Finally, structural modeling of the PARP3-active site with different PARP inhibitors also highlights the potential to develop compounds with different PARP family member specificity profiles for optimal antitumor activity and tolerability. Cancer Res; 76(20); 6084-94. ©2016 AACR.
Date of Publication
2016-10-15
Publication Type
Article
Subject(s)
500 - Science::570 - Life sciences; biology
600 - Technology::610 - Medicine & health
Language(s)
en
Contributor(s)
Oplustil O'Connor, Lenka
Rulten, Stuart L
Cranston, Aaron N
Odedra, Rajesh
Brown, Henry
Jaspers, Janneke E
Jones, Louise
Knights, Charlotte
Evers, Bastiaan
Ting, Attilla
Bradbury, Robert H
Pajic, Marina
Rottenberg, Svenorcid-logo
Institut für Tierpathologie (ITPA)
Jonkers, Jos
Rudge, David
Martin, Niall M B
Caldecott, Keith W
Lau, Alan
O'Connor, Mark J
Additional Credits
Institut für Tierpathologie (ITPA)
Series
Cancer research
Publisher
American Association for Cancer Research AACR
ISSN
0008-5472
Access(Rights)
restricted
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